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3D Reconstruction of Bridges from Airborne Laser Scanning Data and Cadastral Footprints

机译:从机载激光三维重建的桥梁扫描数据和地籍的足迹

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The given paper describes a method for automatic 3D reconstruction of bridges from cadastral footprints and airborne laser scanning point clouds. The reconstructed bridges are used to enrich 3D city models. Unlike roofs, decks of bridges are typically smooth without ridge lines or step edges. Therefore, established methods for roof reconstruction are not suitable for bridges. The standard description language for semantic city models is CityGML. This specification of the Open Geospatial Consortium assumes that surfaces are composed of planar polygons. The approximation of smooth decks by planar polygons is achieved by using a medial axis tree. Instead of the medial axis of the footprint, a modified medial axis is computed that does not consider counter bearing edges. The resulting tree represents centerline connections between all counter bearing edges and, in conjunction with filtered height values of a point cloud, serves as the basis for approximation with polygons. In addition to modeling decks, superstructures such as pylons and cables are also derived from the point cloud. For this purpose, planes carrying many superstructure points are detected using the Random Sampling Consensus Algorithm (RANSAC). Images are generated by projecting points onto these planes. Then, image processing methods are used to find connected contours that are extruded to form 3D objects. The presented method was successfully applied to all bridges of two German cities as well as to large bridges built over the Rhine River.
机译:自动给定的文章描述了一个方法从地籍的3 d重建桥梁脚印和机载激光扫描点云。丰富的三维城市模型。桥梁通常光滑无脊线或步骤边缘。屋顶改造不适合桥梁。语义的标准描述语言CityGML城市模型。开放地理空间财团假定表面是由平面多边形组成。由平面多边形近似光滑甲板是通过使用一个中轴树。中轴的足迹,一个修改内侧轴计算不考虑计数器轴承边缘。代表中心线之间的联系计数器轴承边缘,结合点云的高度值,过滤服务作为与多边形近似的基础。除了建模甲板,上层建筑塔和电缆也来源于点云。许多上层建筑点检测使用随机抽样算法(RANSAC)达成共识。生成的图像上投影点这些飞机。用于查找连接挤压的轮廓形成3 d对象。成功地应用于所有桥梁的两名德国城市以及大型桥梁在建造莱茵河。

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